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内源性大麻素触发外侧杏仁核中去极化诱导的兴奋抑制。

Endogenous cannabinoids trigger the depolarization-induced suppression of excitation in the lateral amygdala.

机构信息

Institute of Physiological Chemistry and Pathobiochemistry, University Medical Center Mainz, Germany.

出版信息

Learn Mem. 2009 Dec 30;17(1):43-9. doi: 10.1101/lm.1663410. Print 2010 Jan.

Abstract

The amygdala is a key area of the brain where the emotional memories are stored throughout the lifespan. It is well established that synapses in the lateral nucleus of amygdala (LA) can undergo long-term potentiation, a putative cellular correlate of learning and memory. However, a type of short-term synaptic plasticity, known as depolarization-induced suppression of excitation (DSE), has not been studied previously in the amygdala in general and in the LA in particular. In this study we aimed to prove either the absence or the presence of this phenomenon in the LA. Our data demonstrate for the first time that DSE is present in the LA and that it modulates the cortical excitatory synaptic input into this region. The existence of this type of retrograde neurotransmission in glutamatergic pyramidal neurons of the LA suggests that the axonal terminals of cortical inputs do possess functional type 1 cannabinoid receptors, and provides a novel insight regarding inputs into the LA. Further experiments indeed revealed endocannabinoids as the messenger for this retrograde signaling in the LA. In conclusion, the DSE may play a functional role in synaptic plasticity and related emotional memory processing in the LA.

摘要

杏仁核是大脑的一个关键区域,在整个生命周期中存储情感记忆。已经确定,杏仁核外侧核(LA)中的突触可以进行长时程增强,这是学习和记忆的潜在细胞相关性。然而,一种称为去极化诱导的抑制兴奋(DSE)的短期突触可塑性以前尚未在杏仁核中普遍研究过,特别是在 LA 中。在这项研究中,我们旨在证明 LA 中是否存在这种现象。我们的数据首次证明,DSE 存在于 LA 中,并且它调节了进入该区域的皮质兴奋性突触输入。LA 中的谷氨酸能锥体神经元中存在这种类型的逆行神经传递表明,皮质输入的轴突末梢确实具有功能性 1 型大麻素受体,并为 LA 中的输入提供了新的见解。进一步的实验确实揭示了内源性大麻素是 LA 中这种逆行信号的信使。总之,DSE 可能在 LA 的突触可塑性和相关的情绪记忆处理中发挥功能作用。

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